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Experimental evaluation on the damages of different drilling modes to tight sandstone reservoirs

机译:不同钻井方式对致密砂岩油藏伤害的实验评价

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The damages of different drilling modes to reservoirs are different in types and degrees. In this paper, the geologic characteristics and types of such damages were analyzed. Then, based on the relationship between reservoir pressure and bottom hole flowing pressure corresponding to different drilling modes, the experimental procedures on reservoir damages in three drilling modes (e.g. gas drilling, liquid-based underbalanced drilling and overbalanced drilling) were designed. Finally, damage simulation experiments were conducted on the tight sandstone reservoir cores of the Jurassic Ahe Fm in the Tarim Basin and Triassic Xujiahe Fm in the central Sichuan Basin. It is shown that the underbalanced drilling is beneficial to reservoir protection because of its less damage on reservoir permeability, but it is, to some extent, sensitive to the stress and the empirical formula of stress sensitivity coefficient is obtained; and that the overbalanced drilling has more reservoir damages due to the invasion of solid and liquid phases. After the water saturation of cores rises to the irreducible water saturation, the decline of gas logging permeability speeds up and the damage degree of water lock increases. It is concluded that the laboratory experiment results of reservoir damage are accordant with the reservoir damage characteristics in actual drilling conditions. Therefore, this method reflects accurately the reservoir damage characteristics and can be used as a new experimental evaluation method on reservoir damage in different drilling modes.
机译:不同钻井方式对储层的伤害在类型和程度上都不同。本文分析了这类破坏的地质特征和类型。然后,根据不同钻井方式对应的储层压力与井底流动压力之间的关系,设计了三种钻井方式(例如天然气钻井,液基欠平衡钻井和过平衡钻井)的储层破坏实验程序。最后,对塔里木盆地侏罗系Ahe Fm和川中盆地三叠系Xujiahe Fm致密砂岩储层进行了破坏模拟实验。结果表明,欠平衡钻井由于对储层渗透率的破坏较小,有利于储层保护,但在一定程度上对应力敏感,得出了应力敏感性系数的经验公式。而且由于固相和液相的侵入,超平衡钻井对储层的损害更大。岩心含水饱和度上升至不可降低的含水饱和度后,测井渗透率下降加快,水锁破坏程度增大。得出的结论是,油藏破坏的实验室实验结果与实际钻井条件下的油藏破坏特征相吻合。因此,该方法能够准确反映储层的破坏特征,可作为不同钻井方式下储层破坏的实验评价新方法。

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